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遗传密码的组织动力学。

On the organizational dynamics of the genetic code.

机构信息

Plant Stress Genomics Research Center, Division of Chemical and Life Sciences and Engineering, King Abdullah University of Science and Technology, Thuwal, Saudi Arabia.

出版信息

Genomics Proteomics Bioinformatics. 2011 Apr;9(1-2):21-9. doi: 10.1016/S1672-0229(11)60004-1.

Abstract

The organization of the canonical genetic code needs to be thoroughly illuminated. Here we reorder the four nucleotides-adenine, thymine, guanine and cytosine-according to their emergence in evolution, and apply the organizational rules to devising an algebraic representation for the canonical genetic code. Under a framework of the devised code, we quantify codon and amino acid usages from a large collection of 917 prokaryotic genome sequences, and associate the usages with its intrinsic structure and classification schemes as well as amino acid physicochemical properties. Our results show that the algebraic representation of the code is structurally equivalent to a content-centric organization of the code and that codon and amino acid usages under different classification schemes were correlated closely with GC content, implying a set of rules governing composition dynamics across a wide variety of prokaryotic genome sequences. These results also indicate that codons and amino acids are not randomly allocated in the code, where the six-fold degenerate codons and their amino acids have important balancing roles for error minimization. Therefore, the content-centric code is of great usefulness in deciphering its hitherto unknown regularities as well as the dynamics of nucleotide, codon, and amino acid compositions.

摘要

规范遗传密码的组织需要被彻底阐明。在这里,我们根据核苷酸在进化中的出现顺序重新排列腺嘌呤、胸腺嘧啶、鸟嘌呤和胞嘧啶这四个核苷酸,并将组织规则应用于设计规范遗传密码的代数表示。在设计的代码框架下,我们从 917 个原核基因组序列的大型集合中量化密码子和氨基酸的使用情况,并将其使用情况与内在结构以及分类方案以及氨基酸理化性质相关联。我们的结果表明,代码的代数表示在结构上等同于代码的以内容为中心的组织,并且在不同分类方案下的密码子和氨基酸使用情况与 GC 含量密切相关,这意味着一组规则可以控制各种原核基因组序列的组成动态。这些结果还表明,密码子和氨基酸在代码中不是随机分配的,其中六重简并密码子及其氨基酸对于最小化错误具有重要的平衡作用。因此,以内容为中心的代码对于破译其迄今为止未知的规律以及核苷酸、密码子和氨基酸组成的动态具有很大的用处。

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